A receptor-like cytoplasmic kinase phosphorylates the host target RIN4, leading to the activation of a plant innate immune receptor J Liu, JM Elmore, ZJD Lin, G Coaker Cell host & microbe 9 (2), 137-146, 2011 | 343 | 2011 |
RIN4 Functions with Plasma Membrane H+-ATPases to Regulate Stomatal Apertures during Pathogen Attack J Liu, JM Elmore, AT Fuglsang, MG Palmgren, BJ Staskawicz, G Coaker PLoS biology 7 (6), e1000139, 2009 | 318 | 2009 |
The role of the plasma membrane H+-ATPase in plant–microbe interactions JM Elmore, G Coaker Molecular plant 4 (3), 416-427, 2011 | 217 | 2011 |
The type III effector HopF2 Pto targets Arabidopsis RIN4 protein to promote Pseudomonas syringae virulence M Wilton, R Subramaniam, J Elmore, C Felsensteiner, G Coaker, ... Proceedings of the National Academy of Sciences 107 (5), 2349-2354, 2010 | 197 | 2010 |
Plant NB-LRR signaling: upstreams and downstreams JM Elmore, ZJD Lin, G Coaker Current opinion in plant biology 14 (4), 365-371, 2011 | 167 | 2011 |
A cysteine-rich protein kinase associates with a membrane immune complex and the cysteine residues are required for cell death KA Yadeta, JM Elmore, AY Creer, B Feng, JY Franco, JS Rufian, P He, ... Plant Physiology 173 (1), 771-787, 2017 | 139 | 2017 |
Quantitative proteomics reveals dynamic changes in the plasma membrane during Arabidopsis immune signaling JM Elmore, J Liu, B Smith, B Phinney, G Coaker Molecular & Cellular Proteomics 11 (4), 2012 | 128 | 2012 |
The Pseudomonas syringae Effector HopQ1 Promotes Bacterial Virulence and Interacts with Tomato 14-3-3 Proteins in a Phosphorylation-Dependent Manner W Li, KA Yadeta, JM Elmore, G Coaker Plant physiology 161 (4), 2062-2074, 2013 | 83 | 2013 |
Bacterial AvrRpt2-like cysteine proteases block activation of the Arabidopsis mitogen-activated protein kinases, MPK4 and MPK11 L Eschen-Lippold, X Jiang, JM Elmore, D Mackey, L Shan, G Coaker, ... Plant Physiology 171 (3), 2223-2238, 2016 | 70 | 2016 |
Evaluation of constitutive viral promoters in transgenic soybean roots and nodules M Govindarajulu, JM Elmore, T Fester, CG Taylor Molecular plant-microbe interactions 21 (8), 1027-1035, 2008 | 54 | 2008 |
Investigating the functions of the RIN4 protein complex during plant innate immune responses J Liu, JM Elmore, G Coaker Plant signaling & behavior 4 (12), 1107-1110, 2009 | 48 | 2009 |
To the proteome and beyond: advances in single-cell omics profiling for plant systems NM Clark, JM Elmore, JW Walley Plant Physiology 188 (2), 726-737, 2022 | 46 | 2022 |
Advancements in the Analysis of the Arabidopsis Plasma Membrane Proteome KA Yadeta, JM Elmore, G Coaker Frontiers in plant science 4, 86, 2013 | 42 | 2013 |
Next-generation yeast-two-hybrid analysis with Y2H-SCORES identifies novel interactors of the MLA immune receptor V Velásquez-Zapata, JM Elmore, S Banerjee, KS Dorman, RP Wise PLoS Computational Biology 17 (4), e1008890, 2021 | 24 | 2021 |
Advances in functional proteomics to study plant-pathogen interactions JM Elmore, BD Griffin, JW Walley Current Opinion in Plant Biology 63, 102061, 2021 | 21 | 2021 |
Integration of multi‐omics data reveals interplay between brassinosteroid and Target of Rapamycin Complex signaling in Arabidopsis C Montes, P Wang, CY Liao, TM Nolan, G Song, NM Clark, JM Elmore, ... New Phytologist 236 (3), 893-910, 2022 | 20 | 2022 |
NGPINT: a next-generation protein–protein interaction software S Banerjee, V Velásquez-Zapata, G Fuerst, JM Elmore, RP Wise Briefings in bioinformatics 22 (4), bbaa351, 2021 | 17 | 2021 |
Biochemical purification of native immune protein complexes JM Elmore, G Coaker Plant Immunity: Methods and Protocols, 31-44, 2011 | 16 | 2011 |
Robotic Assay for Drought (RoAD): An automated phenotyping system for brassinosteroid and drought responses L Xiang, TM Nolan, Y Bao, M Elmore, T Tuel, J Gai, D Shah, P Wang, ... The Plant Journal 107 (6), 1837-1853, 2021 | 10 | 2021 |
Root-knot nematode parasitism suppresses host RNA silencing E Walsh, JM Elmore, CG Taylor Molecular Plant-Microbe Interactions 30 (4), 295-300, 2017 | 10 | 2017 |